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首页> 外文期刊>Expert opinion on drug delivery >In vitro and in vivo evaluation of multilayered pastilles for chronotherapeutic management of nocturnal asthma.
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In vitro and in vivo evaluation of multilayered pastilles for chronotherapeutic management of nocturnal asthma.

机译:在夜间对哮喘进行计时治疗的多层软片的体外和体内评价。

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OBJECTIVE: The present work was undertaken with an objective to design a multilayered dosage form of doxofylline, using pastillation technology, for the chronotherapeutic management of nocturnal asthma. RESEARCH DESIGN & METHODS: Pastilles consisting of the drug, polyethylene glycol and colloidal silicon dioxide, were generated using an in-house laboratory-scale pastillation device. The pastilles were further coated with enteric polymers and a floating layer, using conventional coater. The pastilles were subjected to physicochemical analysis, morphological characterization, in vitro drug release studies and in vivo pharmacokinetic studies in rats. RESULTS: It was observed that colloidal silicon dioxide was instrumental in improving the contact angle of the pastilles. The uncoated pastilles released the drug immediately, while the enteric-coated (10% w/w) pastilles were found to have sufficient acid resistance when the coat is applied with 5% (v/v) triethyl citrate as plasticizer. The in vivo blood serum profile indicated that the pastilles coated with the enteric coat and the additional floating coat were effective in significantly delaying the in vivo drug release required for the chronotherapeutic treatment of nocturnal asthma. CONCLUSION: The present work opens a new alternative to the conventional tablet or capsule dosage form for the development of both immediate-release and modified-release drug delivery systems.
机译:目的:进行本工作的目的是使用去弹技术设计多索茶碱的多层剂型,用于夜间哮喘的计时治疗。研究设计与方法:使用室内实验室规模的除草设备生成由药物,聚乙二醇和胶体二氧化硅组成的锭剂。使用常规包衣机将锭剂进一步用肠溶聚合物和浮层包衣。在大鼠中对锭剂进行理化分析,形态表征,体外药物释放研究和体内药代动力学研究。结果:观察到胶体二氧化硅有助于改善锭剂的接触角。未包衣的锭剂会立即释放药物,而当将5%(v / v)柠檬酸三乙酯用作增塑剂时,肠溶衣(10%w / w)的锭剂具有足够的耐酸性。体内血清学特征表明,涂有肠溶衣和附加浮衣的锭剂有效地显着延迟了夜间治疗哮喘的计时治疗所需的体内药物释放。结论:目前的工作为常规片剂或胶囊剂型的开发提供了新的替代方法,以开发速释和调释药物递送系统。

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